Nonlinear optics (NLO) plays a major role in the modern world: nonlinear optical phenomena have been observed in a wavelength range going from the deep infrared to the extreme ultraviolet, to THz radiation. The optical nonlinearities can be found in crystals, amorphous materials, polymers, liquid crystals, liquids, organic materials, and even gases and plasmas. Nowadays, NLO is relevant for applications in quantum optics, quantum computing, ultra-cold atom physics, plasma physics, and particle accelerators. The work presented in the thesis is limited only to the semiconductors that have a second-order optical nonlinearity and includes two phenomena that use second-order nonlinearity: second-harmonic generation (SHG) and spontaneous parametr...
Gallium phosphide (GaP) is an indirect bandgap semiconductor used widely in solid-state lighting. De...
Nonlinear optics has become an important part of our technology related daily life since its rapid d...
Second-harmonic generation (SHG) in resonant dielectric Mie-scattering nanoparticles has been hailed...
Nonlinear optics (NLO) plays a major role in the modern world: nonlinear optical phenomena have been...
Nonlinear optics (NLO) plays a major role in the modern world: nonlinear optical phenomena have been...
We report on the fabrication of gallium phosphide (GaP) nanowaveguides of controlled dimensions, as ...
Optical properties of semiconductor nanowires (NWs)/nanopillars (NPs), as individual or ensemble, ha...
In this paper, a configuration consisting in a pump propagating in an orthogonal direction with respe...
In this paper, a configuration consisting in a pump propagating in an orthogonal direction with respe...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium phosphide (GaP) is an indirect-bandgap semiconductor used widely in solid-state lighting. De...
The nonlinear optical properties of three nano-structured material systems are investigated: one-dim...
In this paper, we investigate semiconductor nanowaveguides (i.e. ridge waveguides with core-widths n...
Gallium phosphide (GaP) is an indirect bandgap semiconductor used widely in solid-state lighting. De...
Nonlinear optics has become an important part of our technology related daily life since its rapid d...
Second-harmonic generation (SHG) in resonant dielectric Mie-scattering nanoparticles has been hailed...
Nonlinear optics (NLO) plays a major role in the modern world: nonlinear optical phenomena have been...
Nonlinear optics (NLO) plays a major role in the modern world: nonlinear optical phenomena have been...
We report on the fabrication of gallium phosphide (GaP) nanowaveguides of controlled dimensions, as ...
Optical properties of semiconductor nanowires (NWs)/nanopillars (NPs), as individual or ensemble, ha...
In this paper, a configuration consisting in a pump propagating in an orthogonal direction with respe...
In this paper, a configuration consisting in a pump propagating in an orthogonal direction with respe...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium indium phosphide (Ga0.51In0.49P), lattice matched to gallium arsenide, shows remarkable seco...
Gallium phosphide (GaP) is an indirect-bandgap semiconductor used widely in solid-state lighting. De...
The nonlinear optical properties of three nano-structured material systems are investigated: one-dim...
In this paper, we investigate semiconductor nanowaveguides (i.e. ridge waveguides with core-widths n...
Gallium phosphide (GaP) is an indirect bandgap semiconductor used widely in solid-state lighting. De...
Nonlinear optics has become an important part of our technology related daily life since its rapid d...
Second-harmonic generation (SHG) in resonant dielectric Mie-scattering nanoparticles has been hailed...